Evidence and origin of anomalous diffusion of Ag+ ion in amorphous silica: A molecular dynamics study with neural network interatomic potentials.

IF 3.1 2区 化学 Q3 CHEMISTRY, PHYSICAL Journal of Chemical Physics Pub Date : 2025-03-14 DOI:10.1063/5.0251120
Salomé Trillot, Nathalie Tarrat, Nicolas Combe, Patrizio Benzo, Caroline Bonafos, Magali Benoit
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Abstract

The release of Ag+ ions into the environment through silica layers is a promising strategy for the development of anti-microbial surface coating devices. The aim of the present study is to provide some insight into the elementary mechanisms of diffusion of Ag+ ions through silica with the objective of proposing control strategies. Thanks to the development of interaction potentials based on neural networks, the diffusion processes were studied via molecular dynamics simulations. Silver diffusion was found to be anomalous and sub-diffusive, the origin of which could be attributed to deceleration and temporal anti-correlations. This sub-diffusion has been attributed primarily to the disordered nature of the silica matrix. Furthermore, it is magnified by the presence of coordination defects within the silica matrix. These defects, in particular the under-coordinated oxygen atoms, act as traps for Ag+ by forming O-Ag bonds, thereby limiting the jump length and retaining the ion for long duration. By comparison with existing diffusion models, the diffusion mechanism in the absence of defects appears to be of the fractional Brownian motion type, substantially modified by the presence of defects. Two possible approaches have emerged to tune the release of Ag+ ions through the silica layer: the monitoring of the number of defects and the opening/closing of diffusion paths via, e.g., a modification of the silica density.

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Ag+离子在无定形二氧化硅中异常扩散的证据和起源:基于神经网络原子间电位的分子动力学研究。
通过二氧化硅层将Ag+离子释放到环境中是开发抗菌表面涂层器件的一种很有前途的策略。本研究的目的是为银离子通过二氧化硅扩散的基本机制提供一些见解,并提出控制策略。基于神经网络的相互作用势的发展,通过分子动力学模拟研究了扩散过程。发现银的扩散是异常的和次扩散的,其起源可归因于减速和时间反相关。这种亚扩散主要归因于二氧化硅基体的无序性。此外,它被二氧化硅基体中配位缺陷的存在放大。这些缺陷,特别是配位不足的氧原子,通过形成O-Ag键作为Ag+的陷阱,从而限制了跃迁长度并长时间保持离子。与现有的扩散模型相比,在没有缺陷的情况下,扩散机制似乎是分数布朗运动类型,由于缺陷的存在而大大改变。已经出现了两种可能的方法来调整Ag+离子通过二氧化硅层的释放:监测缺陷的数量和扩散路径的打开/关闭,例如,通过修改二氧化硅密度。
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来源期刊
Journal of Chemical Physics
Journal of Chemical Physics 物理-物理:原子、分子和化学物理
CiteScore
7.40
自引率
15.90%
发文量
1615
审稿时长
2 months
期刊介绍: The Journal of Chemical Physics publishes quantitative and rigorous science of long-lasting value in methods and applications of chemical physics. The Journal also publishes brief Communications of significant new findings, Perspectives on the latest advances in the field, and Special Topic issues. The Journal focuses on innovative research in experimental and theoretical areas of chemical physics, including spectroscopy, dynamics, kinetics, statistical mechanics, and quantum mechanics. In addition, topical areas such as polymers, soft matter, materials, surfaces/interfaces, and systems of biological relevance are of increasing importance. Topical coverage includes: Theoretical Methods and Algorithms Advanced Experimental Techniques Atoms, Molecules, and Clusters Liquids, Glasses, and Crystals Surfaces, Interfaces, and Materials Polymers and Soft Matter Biological Molecules and Networks.
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